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On the Formation of Adiabatic Shear Bands in Titanium Alloy Ti17 Under Severe Loading Conditions

机译:在严重负载条件下钛合金TI17中绝热剪切带的形成

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For metallic materials, fabrication processes (e.g. machining and forging) may involve important strain rates and high temperatures. For such severe loading conditions, the development of damage is often associated with the formation of Adiabatic Shear Bands (ASB). In this work, the impact of loading conditions (strain rate, temperature) on the formation of ASB in a beta rich titanium alloy (Ti 17) is investigated. In this perspective, uniaxial compression tests have been conducted on cylindrical samples with a Gleeble-3500 thermo-mechanical simulator at temperatures ranging from 25°C to 800°C and strain rates ranging from 0.1 to 50 s~(-1) with axial strains of approximately 50 %. According to the experimental results, the flow curves exhibit hardening from 25°C to 550°C and softening from 600°C to 800°C. When looking at the evolution of flow stress, the strain rate sensitivity is found to increase significantly with increasing temperatures. Also, adiabatic shear bands are preferably observed for high strain rates and low temperatures. The formation of ASB thus seems to be quite dependent on the evolution of the strain rate sensitivity of Ti17. Finally, metallographic observations have been carried out to better understand the process leading to the formation of ASB. Such observations demonstrate that the average width of ASB increases with increasing temperatures and decreasing strain rates. However, such observations do not allow for identifying whether some specific microstructural transformations (e.g recrystallization or phase transformation) could explain the formation of ASB or not.
机译:对于金属材料,制造过程(例如加工和锻造)可能涉及重要的应变速率和高温。对于这种严重的负载条件,损伤的发展通常与绝热剪切带(ASB)的形成有关。在这项工作中,研究了在β富钛合金(TI 17)中对ASB形成的负载条件(应变率,温度)的影响。在这种观点中,在圆柱形样品上,在圆柱形样品上,在高度为25°C至800℃的温度下,轴向菌株的温度范围为0.1至50 s〜(-1)的温度大约50%。根据实验结果,流动曲线将550℃的硬化与600℃软化至800℃。在看流量应力的演变时,发现应变速率灵敏度随着温度的提高而显着增加。此外,优选观察到绝热剪切带以高应变率和低温。因此,ASB的形成似乎非常依赖于TI17的应变率敏感性的演变。最后,已经进行了金相观察以更好地理解导致ASB形成的过程。这种观察结果表明,ASB的平均宽度随着温度的提高和降低的应变率而增加。然而,这种观察结果不允许识别某些特定的微观结构转换(例如重结晶或相变)是否可以解释ASB的形成。

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